Chinese Optics Letters, Volume. 11, Issue s2, S20101(2013)
Performance of free-space optical communication systems using circle polarization shift keying with spatial diversity receivers
[2] [2] V. W. S. Chan, J. Lightwave Technol. 24, 4750 (2006).
[3] [3] W. O. Popoola, Z. Ghassemlooy, J. I. H. Allen, E. Leitgeb, and S. Gao, IET Optoelectronics 2, 16 (2008).
[4] [4] S. Trisno and C. C. Davis, Proc. SPIE 6304, 63040V (2006).
[5] [5] S. Benedetto and P. Poggiolini, Electron. Lett. 26, 1392 (1990).
[6] [6] X. Zhao, Y. Yao, Y. Sun, and C. Liu, J. Opt. Commun. Netw. 1, 307 (2009).
[7] [7] I. Kim, H. Hakakha, P. Adhikari, and E. J. Korevaar, Proc. SPIE 2990, 102 (2004).
[8] [8] L. C. Andrews, R. L. Phillips, and C. Y. Hopen, Laser Beam Scintillation with Applications (Bellingham, New York, 2001).
[9] [9] S.M. Haas, "Capacity of and coding for multiple-aperture wireless optical communications", PhD. Thesis (Massachusetts Institute of Technology, 2003).
[10] [10] T. A. Tsiftsis, H. G. Sandalidis, G. K. Karagiannidis, and M. Uysal, IEEE Trans. Wireless Commun. 8, 951 (2009).
[11] [11] V. S. Adamchik and O. I. Marichev, in Proceedings of International Conference on Symbolic and Algebraic Computation 212 (1990).
[12] [12] Wolfram, "The wolfram functions site", http: //functions.wolfram.com (June 9, 2001).
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Chao Liu, Yong Yao, Yanfu Yang, Yijun Yuan, Yufeng Zhao, Benshuang Yu, "Performance of free-space optical communication systems using circle polarization shift keying with spatial diversity receivers," Chin. Opt. Lett. 11, S20101 (2013)
Category: Atmospheric and oceanic optics
Received: Jan. 30, 2013
Accepted: Mar. 10, 2013
Published Online: May. 27, 2014
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